4.7 Article

L20, a Calothrixin B analog, induces intrinsic apoptosis on HEL cells through ROS/γ-H2AX/p38 MAPK pathway

期刊

BIOMEDICINE & PHARMACOTHERAPY
卷 137, 期 -, 页码 -

出版社

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.biopha.2021.111336

关键词

L20; Cell cycle; Apoptosis; P38MAPK; DNA damage

资金

  1. National Natural Science Foundation of China [81872772, 81960546, 81700169, U1812403, 21762014, 81871313, 31960087]
  2. Science and Technology Department of Guizhou Province [QKHJC [2018] 1409, QKHZC [2019] 2762, QKHPTRC [2020] 5008, QKHZC [2020] 4Y203, QKHJC [2016] 1002]
  3. 100 Leading Talents of Guizhou Province [P2018-KF11, QZYY-2019-022]

向作者/读者索取更多资源

This study investigated the anti-leukemic effect of a new Calothrixin B derivative, L20, which showed significant cytotoxicity in HEL cells and induced apoptosis and G(2)/M arrest. The mechanism involved DNA damage, modulation of p38 MAPK pathways, and mitochondrial-mediated apoptosis.
Erythroleukemia is a malignant disease in the blood system. Quinones consists of a class of antitumor agents. Calothrixin B is a carbazole-1,4-quinone alkaloid isolated from Calothrix cyanobacteria with a unique indolo[3,2j] phenanthridine framework. This study aimed to investigate the anti-leukemic effect of the new Calothrixin B derivative, L20, and to dig up the underlying mechanisms. Cytotoxicity analysis of L20 has revealed that it shows significant IC50 concentrations in HEL cells at low doses (1.10 +/- 0.05 mu M) than in K562, and KG-1a (5.46 +/- 3.09, and 1.82 +/- 1.08 mu M respectively). The study even revealed that the L20 could induce a dose and time-dependent cellular death in HEL cells. The L20 increased expression of phospho-gamma-H2A.X and phospho-p38 in HEL cells, causing DNA damage and nuclear alterations due to the G(2)/M phase cell cycle arrest. The HEL cells even lost the mitochondrial membrane potential (MMP) and resulted in the release of reactive oxygen species (ROS). Additionally, L20 inhibited the proliferation of HEL cells by inducing apoptosis through the mitochondrial pathway, depending on the caspase family. The study even established this may be due to the upregulation of the pP38MAPK and downregulation of p-ERK. Pretreatment with P38/ERK inhibitors, SB203580, and U0126, decreased L20-induced apoptosis. These findings indicated that L20 induced mitochondrial mediated-apoptosis and G(2)/M arrest through DNA damage and modulation of p38 MAPK pathways. Thus, the study suggests L20, a chemical analog of Calothrixin B, as a novel chemotherapeutic agent against erythroleukemia.

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